van de Loo F J, Salvucci M E
Agricultural Research Service, Western Cotton Research Laboratory, United States Department of Agriculture, 4135 East Broadway Road, Phoenix, Arizona 85040-8830, USA.
Biochemistry. 1998 Mar 31;37(13):4621-5. doi: 10.1021/bi972566e.
Aspartate residues are involved in coordination of the nucleotide-metal of several nucleotide triphosphatases. To examine interactions between Rubisco activase and ATP, site-directed mutations were made at two species-invariant aspartate residues, D174 and D231. In the absence of the magnesium cofactor, the mutant proteins D231R, D174Q, and D174A, but not D174E, bound ATP with higher affinity than did wild-type. In the presence of Mg2+, the affinity for ATP of D231R was further increased, but was reduced with mutations at D174. Although all mutants bound ATP, only D174E aggregated in response to ATP/Mg2+ and retained partial ATPase and Rubisco activation activities. In mixing experiments, the catalytically competent D174E stimulated wild-type ATPase activity, whereas the mutants lacking ATPase activity were inhibitory to wild-type enzyme and prevented aggregation. These results are consistent with a mechanism for activase that involves ATP-binding, subunit aggregation and ATP hydrolysis as sequential steps in the catalytic mechanism. The results also indicated that precise coordination of the gamma-phosphate is required for aggregation and depends on D174 and D231. To account for the pronounced cooperativity of Rubisco activase subunits, we suggest that coordination of the ATP gamma-phosphate may involve participation of residues from adjacent subunits.
天冬氨酸残基参与了几种核苷酸三磷酸酶的核苷酸 - 金属配位。为了研究核酮糖-1,5-二磷酸羧化酶/加氧酶激活酶(Rubisco activase)与ATP之间的相互作用,在两个物种保守的天冬氨酸残基D174和D231处进行了定点突变。在没有镁辅因子的情况下,突变蛋白D231R、D174Q和D174A(而非D174E)与ATP的结合亲和力高于野生型。在存在Mg2+的情况下,D231R对ATP的亲和力进一步增加,但D174处的突变使其降低。尽管所有突变体都能结合ATP,但只有D174E在ATP/Mg2+作用下发生聚集,并保留了部分ATP酶和Rubisco激活活性。在混合实验中,具有催化活性的D174E刺激野生型ATP酶活性,而缺乏ATP酶活性的突变体则抑制野生型酶活性并阻止聚集。这些结果与激活酶的一种机制一致,该机制涉及ATP结合、亚基聚集和ATP水解作为催化机制中的连续步骤。结果还表明,γ-磷酸的精确配位对于聚集是必需的,并且依赖于D174和D231。为了解释Rubisco激活酶亚基的显著协同性,我们认为ATPγ-磷酸的配位可能涉及相邻亚基残基的参与。